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Active control of MHD instabilities by ECCD in ASDEX Upgrade

机译:通过ACCDEX升级中的ECCD主动控制MHD不稳定性

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The modification of the stability and the behaviour of core MHD with local electron cyclotron current drive (ECCD) is presented. Starting from the innermost resonant surface, the q = 1 surface, the stability and hence the sawtooth period and the size of sawteeth is controlled with local on/off-axis co-/counter-ECCD. The sawteeth themselves can serve as a trigger for neoclassical tearing modes (NTMs) and therefore the excitation of NTMs can be influenced. Once these NTMs get excited they can be fully stabilized at high β_N with co-ECCD at the resonant surface. Detailed experiments on the dependence of the stabilization on the ECCD deposition width and the total driven current have shown ways to improve the stabilization efficiency both for the (3/2) and the (2/1)-NTM significantly. In the presence of (3/2)-NTMs the impact on the confinement can be reduced by triggering the so-called frequently interrupted regime (FIR-NTM) with the current drive in the vicinity of the (4/3) surface leading also to a clearer understanding of the FIR-NTM.
机译:提出了使用局部电子回旋电流驱动器(ECCD)来修改MHD核心的稳定性和性能的方法。从最里面的共振表面q = 1开始,其稳定性以及因此的锯齿周期和锯齿尺寸由局部共轴/离轴co- / counter-ECCD控制。锯齿本身可以作为新古典撕裂模式(NTM)的触发因素,因此可以影响NTM的激发。一旦这些NTM激发,它们就可以在共振表面处以co-ECCD完全稳定在高β_N的水平。关于稳定度对ECCD沉积宽度和总驱动电流的依赖性的详细实验已显示出显着提高(3/2)和(2/1)-NTM的稳定化效率的方法。在存在(3/2)-NTM的情况下,可以通过触发所谓的频繁中断状态(FIR-NTM)来减少对限制的影响,其中电流驱动在(4/3)表面附近也导致以便更清楚地了解FIR-NTM。

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